EP3252233A1 - Paver - Google Patents
Paver Download PDFInfo
- Publication number
- EP3252233A1 EP3252233A1 EP17001023.5A EP17001023A EP3252233A1 EP 3252233 A1 EP3252233 A1 EP 3252233A1 EP 17001023 A EP17001023 A EP 17001023A EP 3252233 A1 EP3252233 A1 EP 3252233A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- paver
- road
- operating
- control
- steering
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
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Classifications
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- E—FIXED CONSTRUCTIONS
- E01—CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
- E01C—CONSTRUCTION OF, OR SURFACES FOR, ROADS, SPORTS GROUNDS, OR THE LIKE; MACHINES OR AUXILIARY TOOLS FOR CONSTRUCTION OR REPAIR
- E01C19/00—Machines, tools or auxiliary devices for preparing or distributing paving materials, for working the placed materials, or for forming, consolidating, or finishing the paving
- E01C19/48—Machines, tools or auxiliary devices for preparing or distributing paving materials, for working the placed materials, or for forming, consolidating, or finishing the paving for laying-down the materials and consolidating them, or finishing the surface, e.g. slip forms therefor, forming kerbs or gutters in a continuous operation in situ
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60L—PROPULSION OF ELECTRICALLY-PROPELLED VEHICLES; SUPPLYING ELECTRIC POWER FOR AUXILIARY EQUIPMENT OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRODYNAMIC BRAKE SYSTEMS FOR VEHICLES IN GENERAL; MAGNETIC SUSPENSION OR LEVITATION FOR VEHICLES; MONITORING OPERATING VARIABLES OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRIC SAFETY DEVICES FOR ELECTRICALLY-PROPELLED VEHICLES
- B60L2200/00—Type of vehicles
- B60L2200/40—Working vehicles
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60L—PROPULSION OF ELECTRICALLY-PROPELLED VEHICLES; SUPPLYING ELECTRIC POWER FOR AUXILIARY EQUIPMENT OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRODYNAMIC BRAKE SYSTEMS FOR VEHICLES IN GENERAL; MAGNETIC SUSPENSION OR LEVITATION FOR VEHICLES; MONITORING OPERATING VARIABLES OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRIC SAFETY DEVICES FOR ELECTRICALLY-PROPELLED VEHICLES
- B60L2220/00—Electrical machine types; Structures or applications thereof
- B60L2220/40—Electrical machine applications
- B60L2220/42—Electrical machine applications with use of more than one motor
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60L—PROPULSION OF ELECTRICALLY-PROPELLED VEHICLES; SUPPLYING ELECTRIC POWER FOR AUXILIARY EQUIPMENT OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRODYNAMIC BRAKE SYSTEMS FOR VEHICLES IN GENERAL; MAGNETIC SUSPENSION OR LEVITATION FOR VEHICLES; MONITORING OPERATING VARIABLES OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRIC SAFETY DEVICES FOR ELECTRICALLY-PROPELLED VEHICLES
- B60L2220/00—Electrical machine types; Structures or applications thereof
- B60L2220/40—Electrical machine applications
- B60L2220/44—Wheel Hub motors, i.e. integrated in the wheel hub
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02T—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
- Y02T10/00—Road transport of goods or passengers
- Y02T10/60—Other road transportation technologies with climate change mitigation effect
- Y02T10/64—Electric machine technologies in electromobility
Definitions
- the invention relates to a road finisher according to the preamble of claim 1.
- Road pavers are used to produce asphalt pavements and other road building materials such as concrete. Such pavers are self-propelled. For this they have a chassis, which may be a chain chassis or a wheel gear. As seen in the direction of installation, pavers have at least one front storage container for receiving the road building material, in particular hot bituminous asphalt material.
- the asphalt material is transported from the reservoir by means of a conveyor under a platform with an operator's station to a rear auger which distributes the still hot bituminous road construction material over the working width of the paver in front of at least one rear screed.
- a variety of operating and machine parameters are set. Depending on these parameters, the operation of the road paver takes place. If these parameters change unscheduled during the operation of the road paver, the operation of the paver runs incorrectly. However, it may also be desirable that the mentioned parameters are deliberately changed during the operation of the paver in order to adapt the operation of the possibly changing requirements.
- known road pavers provide an operator station that is located on the paver.
- the operator station consists of an open or closed cabin, from which the operator has an overview of the entire paver and a part of a work area.
- the control station There is a driver's seat in the control station, where the operator can sit down during operation. Furthermore, there is a dashboard and a control means in the control station. While the dashboard displays all parameters and variables important to the operation of the paver, or has switching devices such as buttons or the like, the paver can be accelerated, braked and controlled by the control means. To operate or control the paver, the operator must sit on the driver's seat, because it has access to the control means or on the dashboard only from there. The fact that the operator is bound to the driver's seat, their range of action or their overview or view of the pavement to be produced is very limited.
- the paver For the operation or before the manufacture of the road surface, the paver must be leveled to the local conditions. For this purpose, at least two people are necessary so far, namely one that is in the control room and another, which is located next to the paver. While the person next to the paver gives instructions on how to level the paver, the person in the control station enters appropriate parameters into a control device. Above all, the screed must be leveled in terms of length, shape and height and the orientation of the road paver. Based on the initial leveling the pavement is made.
- Pavers, especially wheel pavers are usually equipped with a servohydraulic steering device. Accordingly, steering cylinders of the individual wheels to be steered the wheel paver are controlled directly when pressing the control means. In this case, a pressure is exerted on the steering cylinder by the steering over the hydraulic, whereby the wheels are moved accordingly.
- the steering characteristics of the wheel paver are limited by such a servo-hydraulic steering device. For example, remote control of the steering device is difficult to realize.
- the invention is an object of the invention to provide a paver in which the operation, in particular the control is comfortable and easy.
- a paver to solve this problem has the features of claim 1. Accordingly, the paver is characterized by a leveling system for the production of the road surface, which is controllable by a process computer. By controlling the leveling system from a process computer, the controller is centralized and automated on the paver. It is now sufficient to supply the mentioned process computer with measured data recorded by sensors in order to level the road paver for the production of the road surface.
- the invention provides that the leveling system is assigned at least one operating unit, preferably two operating units, for the operating personnel. Using the operating units, the operators can operate the leveling system from the road paver or next to the paver, or supply the process computer with the necessary data.
- the leveling system can be assigned several control units, the process of leveling can thereby accelerate that several people each with a control unit different levels of leveling or at different points, the leveling can perform at the same time.
- a particularly preferred embodiment of the invention consists in that the at least one operating unit has an input means, preferably a keyboard or a touchscreen, a presentation means, a display and / or an interface for wired, in particular wireless data transmission.
- the fact that the control unit is wireless the operator can move freely with the input means to the paver, without having to pay attention that the cable is torn or damaged. Any parameters or inputs that need to be made to level the paver can be entered by the operator via a keyboard or directly from the screen. Entries of the operator in the operating unit are transmitted immediately via a wired or wireless data transmission to the process computer, where the actual leveling of the paver takes place without delay.
- the transmitted data not only serve the leveling directly, but can also be stored for further evaluation processes. This also makes it possible to determine afterwards how the leveling of the road paver took place. This can be particularly advantageous if it is to be found out why a road surface has formed faulty.
- additional operating means in particular a joystick, can be connected to the operating unit.
- additional operating means in particular a joystick
- about such controls can be some elements of the paver such as the screed, directly controlled or level by joystick.
- the invention can provide that the at least one operating unit is designed to be compact or flat and can be stowed at any desired location, preferably in a screed side shield of the road paver. Due to the fact that the operating unit can be stowed directly on the screed side plate where it is used, leveling can be carried out directly and quickly, without having to enter the operating position of the road finisher.
- the compact design of the control unit accommodates the harsh working conditions that are common on a road construction site.
- the leveling system has sensors for determining the production parameters, in particular the installation height and the roadway inclination, and sensors for a screed roof profile of the screed. Every moving part, that is necessary for the production of the road surface, may have a sensor that must be leveled. For leveling, these sensors communicate either directly with the operating unit or with the process computer. However, the operating units can not only read data from the sensors, but can also provide these sensors with specific data for the control.
- the invention further provides that the sensors each have at least one uniform data interface, a uniform hardware interface, preferably connectors and / or an independent identification relative to the process computer. This allows the process computer to recognize exactly which information comes from which operating unit or operator. A manipulation of the leveling or the control of the paver becomes more comprehensible and controllable.
- the steering cylinders of the at least two steerable wheels are electrically controllable or steerable depending on or independently of one another.
- the fact that the wheels are dependent or independently controllable or steerable, can be reacted to situations in which the paver has to make difficult steering maneuvers.
- the chassis has at least four wheels for steering with steering cylinders, which are electrically controlled in pairs or independently.
- steering cylinders which are electrically controlled in pairs or independently.
- the steering cylinders can be controlled by the electrical control much finer and reproducible.
- the drivable wheels of the chassis are independently or in pairs operable together, in particular individually or together accelerate or brake.
- the steering cylinders of the wheels for steering and / or the drivable wheels of the chassis are controllable or steerable independently of one another by at least one operating element, in particular are electrically controllable or steerable.
- an operating element may be a conventional operating element on the operating position of the road finisher, or else also a wireless or wired control that can be operated by the operator outside the control station.
- the paver can be controlled or operated remotely from any position, in particular next to the road paver. This has the advantage that the operator can see directly where the paver drives along or produces the road surface.
- a preferred embodiment may further provide that at least one sensor and / or an actuator for electrical control or steering is assigned to each of the drivable wheels and / or the wheels each having a steering cylinder.
- assigning a sensor or an actuator to the steering cylinder the operator receives information directly about any difficulties or problems that may occur when steering the paver.
- At least some wheels of the chassis are controllable or steerable via a control system by a steering device, in particular via an external steering device, preferably a steering machine.
- a steering device in particular via an external steering device, preferably a steering machine.
- the controller of the paver can be programmed so that the production of the pavement is done automatically.
- the process computer By constantly communicating the process computer with the sensors and actuators of the steering cylinder, the production process is checked. In case of a detected deviation of the intended manufacturing process, the paver is stopped or a signal is triggered.
- the steering device can be coupled to the steering of other road construction vehicles, in particular wheel pavers or chain pavers.
- wheel pavers or chain pavers Through this coupling of several road vehicles can be a "Fleet Management" perform.
- Several road construction vehicles are coordinated in such a way that the entire road construction process is optimized in terms of time and coordinated with each other.
- the process computers of the individual road vehicles communicate with each other and exchange data on the status of the manufacturing process. In addition, these data are constantly monitored by a central data processing facility, such as building supervisors.
- the steering device for the drivable wheels and / or each having a steering cylinder wheels is equipped such that it is modularly installed in several different road construction vehicles.
- the steering device can be minimized, in particular production costs.
- older road pavers can be easily equipped with a steering device.
- the steering device has at least one redundant identical device that takes over the steering of the paver in case of failure of the steering device.
- a redundant system compensates for this failure. As a result, idle times or downtime of the paver or the entire construction site can be minimized or prevented.
- a paver may also be designed such that the drives of the at least two driven wheels are electrically controllable independently of each other.
- the at least two, preferably four, driven wheels are independently or in pairs operable together, in particular individually or together accelerated or braked.
- the steering characteristics of the paver can be improved.
- a rotation of the paver on the spot or in a very small area possible. This is particularly advantageous if the production of the road surface must take place in a very narrow and small area.
- FIG. 1 schematically illustrated road paver 10 is used for the production of road surfaces, this may be road coverings of any kind.
- the paver 10 is self-propelled. For this purpose, it has a central drive unit 11 which, for example, has an internal combustion engine which drives hydraulic pumps for supplying hydraulic motors and optionally a generator for generating energy for electric drives.
- a central drive unit 11 which, for example, has an internal combustion engine which drives hydraulic pumps for supplying hydraulic motors and optionally a generator for generating energy for electric drives.
- the road paver 10 has a chassis 12, which is formed in the embodiment shown as a wheel gear, but can also be designed as a crawler chassis or another drive or drive.
- chassis 12 has two drive wheels 13 and four steerable wheels 14.
- the drive wheels 13 are driven by the drive unit 11 such that the paver 10 in the production direction 15 is moved forward.
- a trough or trough-shaped reservoir 16 is arranged in front of the drive unit 11.
- the reservoir 16 receives a supply of serving for the production of the pavement material, such as asphalt on.
- the pavement material such as asphalt on.
- several reservoirs may be provided.
- the road building material from the reservoir 16 is transported under the drive unit 11 through, viewed in the production direction 15, the rear end of the paver 10.
- the road construction material over the entire working width of the paver 10 is distributed.
- a supply of road construction material passes in front of a, behind the auger 17 and the chassis 12 attached, up and down movable behind screed 18th
- the paver 10 is controlled by an operator, not shown, by an operator 19.
- This control station 19 can be designed as a closed or open cabin. In this case, the operator has a driver's seat 20 and a control panel 21.
- the driver's seat 20 or an armrest 22 of the driver's seat 20 may be assigned a control element 23 ( Fig. 2 ). About this in the armrest 22 integrated control element 23rd For example, the operator sitting on the driver's seat 20 can control and control the operation of the paver. By integrating the control element 23 in the armrest 22, the operator retains the control or the ability to operate the paver 10 in any orientation of the driver's seat 20. For example, even if the driver's seat 20 is rotated 180 degrees or shifted to one side, the relative positioning of the operator to the operating member 23 remains the same.
- the settings made by the operator or adjusted parameters as well as the operating and machine parameters can be displayed or read in a display 24, which is likewise assigned to the driver's seat 20.
- the display 24 can either be attached directly to the armrest 22 of the driver's seat 20, or located on the control panel 21 of the control station 19.
- the relative orientation of the armrest 22 to the driver's seat 20 is not on the in the FIG. 2 shown limited. Rather, the control element 23 may also be integrated in a left armrest 22 or be associated with any other part of the driver's seat 20.
- the operating element 23 has an input field 25 permanently connected to the operating element 23 (FIG. Fig. 3 ).
- This input field 25 may include keys 26 or other input means, for example. Through the keys 26, various operating, machine or manufacturing parameters can be entered manually from the driver's seat 20.
- the operating element 23 has a module 27. This module 27 is initially fixed or locked in the control element 23. It forms in the FIG. 3 state shown a unit with the operating element 23.
- the module 27 also has an input field 28 with various input means 29. This input means 29 may be buttons or knobs or the like.
- the module 27 has a display 30. This display 30 is used to display entered values or parameters or the representation of current operating or machine parameters.
- the display 30 may also be designed as a touchscreen, so that it can also serve as input means.
- the module 27 can be removed from the operating element 23 ( Fig. 4 ). The removal takes place by slight pressure on the module 27 or a similar Entrastmaschine.
- the module 27 in the dissolved state of the control element 23 can be considered and used as a mobile control.
- the module 27 via a cable to the control element 23 or the control panel 21 of the Control stand 19 to be connected.
- the module 27 is alternatively wirelessly, that is, for example, by wireless or Bluetooth or WLAN, with the control element 23 and the control panel 21 is connected.
- the operating element 23 has corresponding complementary transmitters or receivers for receiving or transmitting (FIG. Fig. 4 ).
- the module 27 exchanges data with the control element 23 and / or with the control panel 21 independently of the connection. For receiving or transmitting signals, the module 27 not shown transmitter or receiver.
- the paver 10, in particular the screed 18 must be aligned or leveled.
- These sensors 31, 32 can be distance sensors, inclination sensors, level sensors or the like.
- These sensors 31, 32 are positioned at various positions of the road paver 10 and the screed 18, respectively.
- These sensors 31, 32 are controlled via operating units 33, 34.
- These operating units 33, 34 have, for example, a display 35 and an input field 36.
- the operating units communicate wirelessly with the sensors 31, 32.
- both data from the operating units 33, 34 are sent to the sensors 31, 32 such as setting parameters;
- the sensors 31, 32 also send the recorded measurement data back to the operating units 33, 34.
- the received data are directly displayed, for example, by the displays 35 of the operating units 33, 34, so that an operator can make further inputs, for example corrections of the leveling, via the input fields 36.
- Both the sensors 31, 32 and the operating units 33, 34 are in communication with a central process computer 37 of the paver 10.
- this process computer 37 all signals and data of the sensors 31, 32 and the operating units 33, 34 converge.
- the sensors 31, 32 are connected directly via a cable or wirelessly to the process computer 37 (as in the US Pat Fig. 5 represented by arrows 38).
- the operating units 33, 34 also communicate via cable or wirelessly with the process computer 37 (as in FIG Fig. 5 represented by arrows 39).
- the process computer 37 all data of the sensors 31, 32 are evaluated and further processed.
- a signal can be output to the sensors 31, 32 or the operating units 33, 34 in order to correct the leveling.
- the process computer is also in connection with unillustrated motors for control For example, the screed 18.
- the sensors 31, 32 communicate as indicated by the arrows 40 of Fig. 5 shown with the operating units 33, 34th
- the process computer 37 is also connected to the operating element 23 or to the module 27, so that the process computer 37 of the paver 10 records and stores all the machine, operating and production parameters. Furthermore, the process computer 37 is used to optimize the operation of the paver 10 and outputs corresponding signals to the control units or motors.
- Steering cylinder 41 of controllable wheels 14 are electrically controllable in the road paver 10 or wheel paver illustrated here. This electrical activation or control of the steering cylinder 41 is also effected via the central process computer 37 of the road paver 10 (FIG. Fig. 6 ). In this electrical control of the steering cylinder 41 of the steerable wheels 14 is via a steering angle setpoint generator 42, which is, for example, a potentiometer, incremental encoder or the like and can be associated with the control element 23, set a desired value for the steering angle. This setpoint is transferred to the process computer 37 ( Fig. 6 ). The process computer 37 in turn controls a control valve 43 on the basis of the setpoint values of the steering angle setpoint generator 42.
- a steering angle setpoint generator 42 which is, for example, a potentiometer, incremental encoder or the like and can be associated with the control element 23, set a desired value for the steering angle.
- This setpoint is transferred to the process computer 37 ( Fig. 6 ).
- the process computer 37
- This electrical control of the control valve 43 causes the steering cylinder 41 is supplied in a defined amount with a hydraulic oil.
- a hydraulic oil By this supply of the steering cylinder 41 with hydraulic oil causes the steering cylinder 41 via a steering shaft 44 of the wheels 14 adjusts the steering angle of the wheels 14, and that until the determined by the steering angle feedback sensor 45 steering angle with the by the steering angle Setpoint generator 42 corresponds to the preset nominal value of the steering angle.
- This feedback-type adjustment of the steering angle is controlled by the process computer 37.
- This in the Fig. 6 represented by a block diagram electrical control of the steering cylinder 41 for steering the wheels 14 is done for each steerable wheel 14 individually. But it can also wheels 14 are coupled in parallel or in pairs, so that they are equally controlled.
- the steering is thus not effected by steering cylinders 41, but rather by an acceleration or deceleration of the wheel motors 48, 49, as is known, for example, from tracked vehicles.
- the steering behavior of the paver 10 can be improved.
- the steering of the road paver 10 takes place exclusively by an electrical control of the wheel motors 48 and 49, so that by an opposite acceleration or deceleration of the drive wheels 13 of the paver 10 is controlled.
- the entire sequence of movements or control sequence of the road paver 10 is constantly monitored by the process computer 37 and, if necessary, optimized and corresponding parameters are transmitted to the operating elements 23 or the operating units 34.
- the control process of the paver 10 can be constantly controlled or controlled.
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- Road Paving Machines (AREA)
Abstract
Straßenfertiger (10) dienen der Herstellung von Straßenbelägen aus Asphalt und anderen Straßenbaumaterialien. Solche Straßenfertiger (10) sind selbstfahrend ausgebildet. Dazu verfügen sie über ein Fahrwerk (12), bei dem es sich um ein Kettenfahrwerk oder ein Radfahrwerk handeln kann. Straßenfertiger (10) verfügen über einen Bedienstand (19) in dem sich ein Fahrersitz (20) befindet. Zum Bedienen bzw. Steuern des Straßenfertigers (10) muss die Bedienperson auf dem Fahrersitz (19) sitzen, weil sie nur von dort aus Zugriff auf die Steuermittel bzw. auf das Armaturenbrett (21) hat. Dadurch das die Bedienperson an den Fahrersitz (20) gebunden ist, ist ihr Aktionsradius bzw. ihr Überblick bzw. Sicht auf den herzustellenden Straßenbelag sehr eingeschränkt. Vor der Inbetriebnahme muss der Straßenfertiger (10) nivelliert werden. Bisher erfolgt die Nivellierung durch zwei Personen, was sehr kostenintensiv ist und diverse Schwierigkeiten aufweist. Straßenfertiger (10), insbesondere Radfertiger sind üblicherweise mit einer servo-hydraulischen Lenkeinrichtung ausgestattet. Die Lenkeigenschaften des Radfertigers sind durch eine derartige servo-hydraulische Lenkeinrichtung begrenzt. Die Anmeldung schafft nun einen Straßenfertiger (10), bei dem die Bedienung, insbesondere die Steuerung komfortabel und einfach ausgestaltet ist.Road pavers (10) are used to produce asphalt pavements and other road building materials. Such road pavers (10) are self-propelled. For this they have a chassis (12), which may be a chain chassis or a wheel gear. Paver (10) have an operating stand (19) in which a driver's seat (20) is located. To operate or control the paver (10), the operator must sit on the driver's seat (19), because only from there has access to the control means or on the dashboard (21). The fact that the operator is bound to the driver's seat (20), their range of action or their overview or view of the pavement to be produced is very limited. Before commissioning, the paver (10) must be leveled. So far, the leveling is done by two people, which is very costly and has various difficulties. Road pavers (10), especially wheel pavers are usually equipped with a servo-hydraulic steering device. The steering characteristics of the wheel paver are limited by such a servo-hydraulic steering device. The application now provides a paver (10), in which the operation, especially the control is comfortable and easy.
Description
Die Erfindung betrifft einen Straßenfertiger gemäß dem Oberbegriff des Anspruchs 1.The invention relates to a road finisher according to the preamble of claim 1.
Straßenfertiger dienen der Herstellung von Straßenbelägen aus Asphalt und anderen Straßenbaumaterialien wie beispielsweise Beton. Solche Straßenfertiger sind selbstfahrend ausgebildet. Dazu verfügen sie über ein Fahrwerk, bei dem es sich um ein Kettenfahrwerk oder ein Radfahrwerk handeln kann. Straßenfertiger weisen in Einbaurichtung gesehen mindestens einen vorderen Vorratsbehälter zur Aufnahme des Straßenbaumaterials, insbesondere heißen bituminösen Asphaltmaterials auf. Das Asphaltmaterial wird vom Vorratsbehälter mittels eines Förderers unter einer Plattform mit einem Bedienstand zu einer hinteren Verteilerschnecke transportiert, die das noch heiße bituminöse Straßenbaumaterial über die Arbeitsbreite des Straßenfertigers vor mindestens einer hinteren Einbaubohle verteilt.Road pavers are used to produce asphalt pavements and other road building materials such as concrete. Such pavers are self-propelled. For this they have a chassis, which may be a chain chassis or a wheel gear. As seen in the direction of installation, pavers have at least one front storage container for receiving the road building material, in particular hot bituminous asphalt material. The asphalt material is transported from the reservoir by means of a conveyor under a platform with an operator's station to a rear auger which distributes the still hot bituminous road construction material over the working width of the paver in front of at least one rear screed.
Zum betreiben eines Straßenfertigers sind eine Vielzahl von Betriebs- und Maschinenparametern festzulegen. In Abhängigkeit von diesen Parametern erfolgt der Betrieb des Straßenfertigers. Ändern sich während des Betriebes des Straßenfertigers diese Parameter außerplanmäßig, verläuft der Betrieb des Straßenfertigers fehlerhaft. Es kann aber auch erwünscht sein, dass die genannten Parameter absichtlich während des Betriebes des Straßenfertigers geändert werden, um den Betrieb der sich eventuell ändernden Anforderungen anzupassen.To operate a paver, a variety of operating and machine parameters are set. Depending on these parameters, the operation of the road paver takes place. If these parameters change unscheduled during the operation of the road paver, the operation of the paver runs incorrectly. However, it may also be desirable that the mentioned parameters are deliberately changed during the operation of the paver in order to adapt the operation of the possibly changing requirements.
Die Betriebs- und Maschinenparameter sowie weitere für die Herstellung des Straßenbelags wesentlichen Parameter werden von einer Bedienperson vor oder während der Herstellung des Straßenbelags manuell eingegeben. Dazu sehen bekannte Straßenfertiger einen Bedienstand vor, der sich auf dem Straßenfertiger befindet. Üblicherweise besteht der Bedienstand aus einer offenen oder geschlossenen Kabine, von der aus die Bedienperson einen Überblick über den gesamten Straßenfertiger und einen Teil eines Arbeitsbereiches hat.The operating and machine parameters as well as other parameters essential for the production of the road surface are manually entered by an operator before or during the production of the road surface. For this purpose, known road pavers provide an operator station that is located on the paver. Usually, the operator station consists of an open or closed cabin, from which the operator has an overview of the entire paver and a part of a work area.
In dem Bedienstand befindet sich ein Fahrersitz, auf dem die Bedienperson während des Betriebes Platz nehmen kann. Des Weiteren befinden sich in dem Bedienstand ein Armaturenbrett und ein Steuermittel. Während das Armaturenbrett sämtliche zum Betrieb des Straßenfertigers wichtigen Parameter und Größen anzeigt, bzw. Schaltvorrichtungen wie Knöpfe oder dergleichen aufweist, lässt sich über die Steuermittel der Straßenfertiger beschleunigen, bremsen und steuern. Zum Bedienen bzw. Steuern des Straßenfertigers muss die Bedienperson auf dem Fahrersitz sitzen, weil sie nur von dort aus Zugriff auf die Steuermittel bzw. auf das Armaturenbrett hat. Dadurch dass die Bedienperson an den Fahrersitz gebunden ist, ist ihr Aktionsradius bzw. ihr Überblick bzw. Sicht auf den herzustellenden Straßenbelag sehr eingeschränkt. Sobald die Bedienperson sich jedoch von dem Fahrersitz erhebt oder gar den Bedienstand verlässt, verliert sie die Kontrolle über den Straßenfertiger bzw. stoppt der Betrieb des Straßenfertigers aus Sicherheitsgründen. Diese eingeschränkte Sicht der Bedienperson ist besonders bei engen und/oder schwierigen Passagen des herzustellenden Straßenbelags von Nachteil. Außerdem ist es als besonders nachteilig bzw. unkomfortabel anzusehen, dass der Fahrersitz von dem Steuermittel bzw. dem Armaturenbrett beabstandet ist. Besonders bei Bedienpersonen die aus anatomischen Gründen Schwierigkeiten haben, im Sitzen die Steuermittel zu erreichen, gestaltet sich die Bedienung des Straßenfertigers als sehr unkomfortabel.There is a driver's seat in the control station, where the operator can sit down during operation. Furthermore, there is a dashboard and a control means in the control station. While the dashboard displays all parameters and variables important to the operation of the paver, or has switching devices such as buttons or the like, the paver can be accelerated, braked and controlled by the control means. To operate or control the paver, the operator must sit on the driver's seat, because it has access to the control means or on the dashboard only from there. The fact that the operator is bound to the driver's seat, their range of action or their overview or view of the pavement to be produced is very limited. However, as soon as the operator rises from the driver's seat or even leaves the control station, she loses control of the paver or stops the operation of the paver for safety reasons. This limited view of the operator is particularly disadvantageous in narrow and / or difficult passages of the road surface to be produced. In addition, it is to be regarded as particularly disadvantageous or uncomfortable that the driver's seat is spaced from the control means or the dashboard. Especially with operators who have difficulties for anatomical reasons to reach while sitting the control means, the operation of the paver designed as very uncomfortable.
Für den Betrieb bzw. vor der Herstellung des Straßenbelags muss der Straßenfertiger auf die örtlichen Bedingungen einnivelliert werden. Dazu sind bisher mindestens zwei Personen notwendig, nämlich eine die sich im Bedienstand aufhält und eine weitere, die sich neben dem Straßenfertiger aufhält. Während die Person neben dem Straßenfertiger Anweisungen gibt, wie der Straßenfertiger zu nivellieren ist, gibt die Person im Bedienstand entsprechende Parameter in eine Steuervorrichtung ein. Nivelliert werden müssen vor allem die Einbaubohle in Länge, Form und Höhe und die Ausrichtung des Straßenfertigers. Anhand der anfänglichen Nivellierung wird der Straßenbelag hergestellt.For the operation or before the manufacture of the road surface, the paver must be leveled to the local conditions. For this purpose, at least two people are necessary so far, namely one that is in the control room and another, which is located next to the paver. While the person next to the paver gives instructions on how to level the paver, the person in the control station enters appropriate parameters into a control device. Above all, the screed must be leveled in terms of length, shape and height and the orientation of the road paver. Based on the initial leveling the pavement is made.
Die Nivellierung durch zwei Personen ist sehr kostenintensiv und weist diverse Schwierigkeiten auf. So lassen sich, insbesondere bei einer lauten Geräuschkulisse, wie sie auf Baustellen üblich ist, Kommunikationsschwierigkeiten und damit verbundene Missverständnisse nicht vermeiden. Ein falsch einnivellierter Straßenfertiger führt dazu, dass der gesamte Straßenbelag fehlerhaft hergestellt wird. Dies ist mit enormen Kosten verbunden und bedeutet sogleich einen zeitlichen Mehraufwand, der gerade im Straßenbau sehr kritisch ausfallen kann.The leveling by two people is very costly and has various difficulties. Thus, especially with a loud background noise, as is customary on construction sites, communication difficulties and misunderstandings associated with them can not be avoided. An incorrectly leveled paver results in the entire pavement being made faulty. This is associated with enormous costs and immediately means additional time, which can be very critical especially in road construction.
Straßenfertiger, insbesondere Radfertiger sind üblicherweise mit einer servohydraulischen Lenkeinrichtung ausgestattet. Demnach werden Lenkzylinder der einzelnen zu lenkenden Räder des Radfertigers direkt beim betätigen des Steuermittels angesteuert. Dabei wird durch das Lenken über die Hydraulik ein Druck auf die Lenkzylinder ausgeübt, wodurch die Räder entsprechend bewegt werden. Die Lenkeigenschaften des Radfertigers sind durch eine derartige servo-hydraulische Lenkeinrichtung begrenzt. So lässt sich beispielsweise eine Fernsteuerung der Lenkeinrichtung nur schwer realisieren.Pavers, especially wheel pavers are usually equipped with a servohydraulic steering device. Accordingly, steering cylinders of the individual wheels to be steered the wheel paver are controlled directly when pressing the control means. In this case, a pressure is exerted on the steering cylinder by the steering over the hydraulic, whereby the wheels are moved accordingly. The steering characteristics of the wheel paver are limited by such a servo-hydraulic steering device. For example, remote control of the steering device is difficult to realize.
Der Erfindung liegt nun die Aufgabe zugrunde, einen Straßenfertiger zu schaffen, bei dem die Bedienung, insbesondere die Steuerung komfortabel und einfach ausgestaltet ist.The invention is an object of the invention to provide a paver in which the operation, in particular the control is comfortable and easy.
Ein Straßenfertiger zur Lösung dieser Aufgabe weist die Merkmale des Anspruchs 1 auf. Demnach ist der Straßenfertiger gekennzeichnet durch ein Nivelliersystem für die Herstellung des Straßenbelags, das von einem Prozessrechner steuerbar ist. Durch das Steuern des Nivelliersystems von einem Prozessrechner wird die Steuerung auf dem Straßenfertiger zentralisiert und automatisiert. Es genügt nun, den genannten Prozessrechner mit von Sensoren aufgenommenen Messdaten zu versorgen, um den Straßenfertiger für die Herstellung des Straßenbelags zu nivellieren.A paver to solve this problem has the features of claim 1. Accordingly, the paver is characterized by a leveling system for the production of the road surface, which is controllable by a process computer. By controlling the leveling system from a process computer, the controller is centralized and automated on the paver. It is now sufficient to supply the mentioned process computer with measured data recorded by sensors in order to level the road paver for the production of the road surface.
Die Erfindung sieht es insbesondere vor, dass dem Nivelliersystem mindestens eine Bedieneinheit, vorzugsweise zwei Bedieneinheiten, für das Bedienpersonal zugeordnet sind. Über die Bedieneinheiten können die Bedienpersonen von dem Straßenfertiger aus oder neben dem Straßenfertiger das Nivelliersystem bedienen, bzw. den Prozessrechner mit den nötigen Daten versorgen. Dadurch, dass dem Nivelliersystem mehrere Bedieneinheiten zugeordnet werden können, lässt sich der Vorgang des Einnivellierens dadurch beschleunigen, dass mehrere Personen jeweils mit einer Bedieneinheit verschiedene Schritte des Nivellierens bzw. an verschiedenen Stellen das Einnivellieren zeitgleich durchführen können.In particular, the invention provides that the leveling system is assigned at least one operating unit, preferably two operating units, for the operating personnel. Using the operating units, the operators can operate the leveling system from the road paver or next to the paver, or supply the process computer with the necessary data. The fact that the leveling system can be assigned several control units, the process of leveling can thereby accelerate that several people each with a control unit different levels of leveling or at different points, the leveling can perform at the same time.
Ein besonders bevorzugtes Ausführungsbeispiel der Erfindung besteht darin, dass die mindestens eine Bedieneinheit ein Eingabemittel, vorzugsweise eine Tastatur oder ein Touchscreen, ein Darstellungsmittel, ein Display und oder eine Schnittstelle zur kabelgebundenen, insbesondere kabellosen Datenübertragung aufweist. Dadurch, dass die Bedieneinheit kabellos ausgebildet ist, kann die Bedienperson sich mit dem Eingabemittel frei um den Straßenfertiger bewegen, ohne darauf achten zu müssen, dass das Kabel reißt oder beschädigt wird. Jegliche Parameter oder Eingaben die zur Nivellierung des Straßenfertigers vorgenommen werden müssen, kann die Bedienperson über eine Tastatur oder direkt über den Bildschirm eingeben. Eingaben der Bedienperson in die Bedieneinheit werden sofort über eine kabelgebundene oder kabellose Datenübertragung auf den Prozessrechner übertragen, wo die eigentliche Nivellierung des Straßenfertigers verzögerungsfrei erfolgt. Dabei dienen die übertragenen Daten nicht nur der Nivellierung direkt, sondern können auch für weitere Auswertungsvorgänge abgespeichert werden. So lässt sich auch noch im Nachhinein feststellen, wie die Nivellierung des Straßenfertigers erfolgte. Dies kann besonders vorteilhaft sein, wenn herausgefunden werden soll, warum ein Straßenbelag fehlerhaft entstanden ist.A particularly preferred embodiment of the invention consists in that the at least one operating unit has an input means, preferably a keyboard or a touchscreen, a presentation means, a display and / or an interface for wired, in particular wireless data transmission. The fact that the control unit is wireless, the operator can move freely with the input means to the paver, without having to pay attention that the cable is torn or damaged. Any parameters or inputs that need to be made to level the paver can be entered by the operator via a keyboard or directly from the screen. Entries of the operator in the operating unit are transmitted immediately via a wired or wireless data transmission to the process computer, where the actual leveling of the paver takes place without delay. The transmitted data not only serve the leveling directly, but can also be stored for further evaluation processes. This also makes it possible to determine afterwards how the leveling of the road paver took place. This can be particularly advantageous if it is to be found out why a road surface has formed faulty.
Bevorzugt ist es weiter vorgesehen, dass zusätzliche Bedienmittel, insbesondere ein Joystick, an die Bedieneinheit anschließbar sind. Über derartige Bedienmittel lassen sich manche Elemente des Straßenfertigers wie beispielsweise die Einbaubohle, direkt per Joystick steuern bzw. einnivellieren.Preferably, it is further provided that additional operating means, in particular a joystick, can be connected to the operating unit. About such controls can be some elements of the paver such as the screed, directly controlled or level by joystick.
Weiter kann es die Erfindung vorsehen, dass die mindestens eine Bedieneinheit kompakt bzw. flach ausgebildet ist und jeweils an einem beliebigen Platz, vorzugsweise in einem Bohlenseitenschild des Straßenfertigers, verstaubar ist. Dadurch, dass die Bedieneinheit direkt dort wo sie Verwendung findet, nämlich am Bohlenseitenschild verstaubar ist, kann eine Nivellierung direkt und schnell erfolgen, ohne das der Bedienstand des Straßenfertigers betreten werden muss. Durch die kompakte Bauweise der Bedieneinheit werden den rauen Arbeitsbedingungen, die auf einer Straßenbaustelle üblich sind, Rechnung getragen.Furthermore, the invention can provide that the at least one operating unit is designed to be compact or flat and can be stowed at any desired location, preferably in a screed side shield of the road paver. Due to the fact that the operating unit can be stowed directly on the screed side plate where it is used, leveling can be carried out directly and quickly, without having to enter the operating position of the road finisher. The compact design of the control unit accommodates the harsh working conditions that are common on a road construction site.
Des Weiteren ist es vorgesehen, dass das Nivelliersystem Sensoren zur Ermittlung der Herstellungsparameter, insbesondere der Einbauhöhe und der Fahrbahnneigung und Sensoren für ein Bohlendachprofil der Einbaubohle aufweist. Jedes bewegliche Teil, das für die Herstellung des Straßenbelags notwendig ist, kann einen Sensor aufweisen, der einnivelliert werden muss. Zur Einnivellierung kommunizieren diese Sensoren entweder direkt mit der Bedieneinheit oder mit dem Prozessrechner. Die Bedieneinheiten können allerdings nicht nur Daten der Sensoren auslesen, sondern können diese Sensoren auch mit bestimmten Daten zur Steuerung versorgen.Furthermore, it is provided that the leveling system has sensors for determining the production parameters, in particular the installation height and the roadway inclination, and sensors for a screed roof profile of the screed. Every moving part, that is necessary for the production of the road surface, may have a sensor that must be leveled. For leveling, these sensors communicate either directly with the operating unit or with the process computer. However, the operating units can not only read data from the sensors, but can also provide these sensors with specific data for the control.
Insbesondere sieht es die Erfindung weiter vor, dass die Sensoren jeweils mindestens eine einheitliche Datenschnittstelle, eine einheitliche hardwaretechnische Schnittstelle, vorzugsweise Steckverbinder und oder eine selbstständige Identifikation gegenüber dem Prozessrechner aufweisen. Dadurch kann der Prozessrechner genau erkennen, welche Information von welcher Bedieneinheit bzw. Bedienperson kommt. Eine Manipulation der Nivellierung bzw. der Steuerung des Straßenfertigers wird dadurch nachvollziehbarer und kontrollierbarer.In particular, the invention further provides that the sensors each have at least one uniform data interface, a uniform hardware interface, preferably connectors and / or an independent identification relative to the process computer. This allows the process computer to recognize exactly which information comes from which operating unit or operator. A manipulation of the leveling or the control of the paver becomes more comprehensible and controllable.
Außerdem kann es vorgesehen sein, dass die Lenkzylinder der mindestens zwei lenkbaren Räder abhängig oder unabhängig voneinander elektrisch ansteuerbar bzw. lenkbar sind. Dadurch, dass die Räder abhängig bzw. unabhängig voneinander ansteuerbar bzw. lenkbar sind, kann auf Situationen reagiert werden, in denen der Straßenfertiger schwierige Lenkmanöver vornehmen muss.In addition, it can be provided that the steering cylinders of the at least two steerable wheels are electrically controllable or steerable depending on or independently of one another. The fact that the wheels are dependent or independently controllable or steerable, can be reacted to situations in which the paver has to make difficult steering maneuvers.
Als besonders vorteilhaft gestaltet sich außerdem die Möglichkeit, dass das Fahrwerk mindestens vier Räder zum Lenken mit Lenkzylindern aufweist, die paarweise oder unabhängig voneinander elektrisch ansteuerbar sind. Bei Straßenfertigern, deren Lenkung durch vier Räder erfolgt, lassen sich besonders schwierige Lenkmanöver durchführen. Insbesondere durch die elektrische Ansteuerung der Lenkzylinder können bessere Lenkeigenschaften erreicht werden. Die Lenkzylinder können durch die elektrische Ansteuerung sehr viel feiner und reproduzierbar angesteuert werden.Also particularly advantageous is the possibility that the chassis has at least four wheels for steering with steering cylinders, which are electrically controlled in pairs or independently. For road pavers whose steering is done by four wheels, particularly difficult steering maneuvers can be performed. In particular, by the electrical control of the steering cylinder better steering characteristics can be achieved. The steering cylinders can be controlled by the electrical control much finer and reproducible.
Des Weiteren ist es denkbar, dass die antreibbaren Räder des Fahrwerks unabhängig voneinander oder paarweise zusammen betreibbar sind, insbesondere einzeln oder zusammen beschleunigen oder bremsen können.Furthermore, it is conceivable that the drivable wheels of the chassis are independently or in pairs operable together, in particular individually or together accelerate or brake.
Des Weiteren kann es vorgesehen sein, dass die Lenkzylinder der Räder zum Lenken und/oder die antreibbaren Räder des Fahrwerks abhängig oder unabhängig voneinander durch mindestens ein Bedienelement ansteuerbar bzw. lenkbar sind, insbesondere elektrisch ansteuerbar bzw. lenkbar sind. Ein derartiges Bedienelement kann ein konventionelles Bedienelement auf dem Bedienstand des Straßenfertigers sein, oder aber auch ein kabellos bzw. kabelgebundenes Bedienelement, dass außerhalb des Bedienstandes durch die Bedienperson bedienbar ist. So lässt sich beispielsweise der Straßenfertiger per Fernsteuerung von einer beliebigen Position, insbesondere neben dem Straßenfertiger, lenken bzw. bedienen. Das hat den Vorteil, dass die Bedienperson direkt sieht, wo der Straßenfertiger entlang fährt bzw. den Straßenbelag herstellt.Furthermore, it may be provided that the steering cylinders of the wheels for steering and / or the drivable wheels of the chassis are controllable or steerable independently of one another by at least one operating element, in particular are electrically controllable or steerable. Such an operating element may be a conventional operating element on the operating position of the road finisher, or else also a wireless or wired control that can be operated by the operator outside the control station. For example, the paver can be controlled or operated remotely from any position, in particular next to the road paver. This has the advantage that the operator can see directly where the paver drives along or produces the road surface.
Ein bevorzugtes Ausführungsbeispiel kann es weiter vorsehen, dass den antreibbaren Rädern und/oder den jeweils einen Lenkzylinder aufweisenden Rädern jeweils mindestens ein Sensor und oder ein Aktor zum elektrischen Ansteuern bzw. Lenken zugeordnet ist. Durch diese Zuordnung eines Sensors bzw. eines Aktors zum Lenkzylinder, erhält die Bedienperson direkt Auskunft über eventuelle Schwierigkeiten oder Probleme die beim Lenken des Straßenfertigers auftreten können.A preferred embodiment may further provide that at least one sensor and / or an actuator for electrical control or steering is assigned to each of the drivable wheels and / or the wheels each having a steering cylinder. By assigning a sensor or an actuator to the steering cylinder, the operator receives information directly about any difficulties or problems that may occur when steering the paver.
Als besonders vorteilhaft kann es angesehen werden, dass wenigstens einige Räder des Fahrwerks über eine Steuerregelung durch eine Lenkeinrichtung, insbesondere über eine externe Lenkeinrichtung, vorzugsweise einen Lenkautomat ansteuerbar bzw. lenkbar sind. Über eine derartige Lenkeinrichtung bzw. einen Lenkautomaten lässt sich die Steuerung des Straßenfertigers programmieren, sodass die Herstellung des Straßenbelags automatisch erfolgt. Durch ständiges Kommunizieren des Prozessrechners mit den Sensoren und Aktoren der Lenkzylinder erfolgt eine Überprüfung des Herstellungsprozesses. Bei einer festgestellten Abweichung des vorgesehenen Herstellungsprozesses, wird der Straßenfertiger gestoppt bzw. wird ein Signal ausgelöst.It can be considered to be particularly advantageous that at least some wheels of the chassis are controllable or steerable via a control system by a steering device, in particular via an external steering device, preferably a steering machine. About such a steering device or a steering machine, the controller of the paver can be programmed so that the production of the pavement is done automatically. By constantly communicating the process computer with the sensors and actuators of the steering cylinder, the production process is checked. In case of a detected deviation of the intended manufacturing process, the paver is stopped or a signal is triggered.
Des Weiteren ist es als besonders vorteilhaft anzusehen, dass die Lenkeinrichtung mit der Lenkung weiterer Straßenbaufahrzeuge, insbesondere Radfertiger oder Kettenfertiger koppelbar ist. Durch diese Koppelung mehrerer Straßenbaufahrzeuge lässt sich ein "Fleet Management" durchführen. Dabei werden mehrere Straßenbaufahrzeuge so koordiniert, dass der gesamte Straßenbauprozess zeitlich optimiert und aufeinander abgestimmt erfolgt. Dabei kommunizieren die Prozessrechner der einzelnen Straßenbaufahrzeuge miteinander und tauschen Daten zum Status des Herstellungsprozesses aus. Außerdem werden diese Daten durch eine zentrale Datenverarbeitungseinrichtung, wie beispielsweise der Bauaufsicht, ständig kontrolliert.Furthermore, it can be regarded as particularly advantageous that the steering device can be coupled to the steering of other road construction vehicles, in particular wheel pavers or chain pavers. Through this coupling of several road vehicles can be a "Fleet Management" perform. Several road construction vehicles are coordinated in such a way that the entire road construction process is optimized in terms of time and coordinated with each other. The process computers of the individual road vehicles communicate with each other and exchange data on the status of the manufacturing process. In addition, these data are constantly monitored by a central data processing facility, such as building supervisors.
Bevorzugt kann es weiter vorgesehen sein, dass die Lenkeinrichtung für die antreibbaren Räder und/oder die jeweils einen Lenkzylinder aufweisenden Räder derart ausgestattet ist, dass sie in mehrere, verschiedenen Straßenbaufahrzeugen modulartig einbaubar ist. Durch diese modulartige bzw. baukastenartige Ausgestaltung der Lenkeinrichtung können, insbesondere Herstellungskosten minimiert werden. Außerdem lassen sich ältere Straßenfertiger so einfach mit einer Lenkeinrichtung ausstatten.Preferably, it may further be provided that the steering device for the drivable wheels and / or each having a steering cylinder wheels is equipped such that it is modularly installed in several different road construction vehicles. Through this modular or modular design of the steering device can be minimized, in particular production costs. In addition, older road pavers can be easily equipped with a steering device.
Es kann außerdem weiter vorgesehen sein, dass die Lenkeinrichtung über mindestens eine redundante baugleiche Einrichtung verfügt, die bei Störung der Lenkeinrichtung die Lenkung des Straßenfertigers übernimmt. Besonders bei elektrisch betriebenen Lenkeinrichtungen, ist es vorteilhaft, dass beim Ausfall eines elektrischen Signalgebers oder Empfängers oder dergleichen ein redundantes System diesen Ausfall kompensiert. Dadurch können Leerlaufzeiten bzw. Standzeiten des Straßenfertigers bzw. der gesamten Baustelle minimiert bzw. verhindert werden.It can also be further provided that the steering device has at least one redundant identical device that takes over the steering of the paver in case of failure of the steering device. Especially with electrically operated steering devices, it is advantageous that in case of failure of an electrical signal transmitter or receiver or the like, a redundant system compensates for this failure. As a result, idle times or downtime of the paver or the entire construction site can be minimized or prevented.
Ein Straßenfertiger kann außerdem derart ausgebildet sein, dass die Antriebe der mindestens zwei angetriebenen Räder unabhängig voneinander elektrisch ansteuerbar sind. Außerdem ist es vorgesehen, dass durch elektrische Ansteuerung der Antriebe die mindestens zwei, vorzugsweise vier, angetriebenen Räder unabhängig voneinander oder paarweise zusammen betreibbar sind, insbesondere einzeln oder zusammen beschleunigt oder bremsbar sind. Durch diese elektrische Ansteuerung der angetriebenen Räder können die Lenkeigenschaften des Straßenfertigers verbessert werden. So wird beispielsweise eine Drehung des Straßenfertigers auf der Stelle bzw. in einem sehr kleinen Bereich möglich. Dies ist insbesondere vom Vorteil, wenn die Herstellung des Straßenbelags in einem sehr engen und kleinen Bereich stattfinden muss.A paver may also be designed such that the drives of the at least two driven wheels are electrically controllable independently of each other. In addition, it is provided that by electrical control of the drives, the at least two, preferably four, driven wheels are independently or in pairs operable together, in particular individually or together accelerated or braked. By this electrical control of the driven wheels, the steering characteristics of the paver can be improved. Thus, for example, a rotation of the paver on the spot or in a very small area possible. This is particularly advantageous if the production of the road surface must take place in a very narrow and small area.
Bevorzugte Ausführungsbeispiele von Straßenfertigern werden nachfolgend anhand der Zeichnungen näher erläutert. In dieser zeigen:
- Fig. 1
- eine schematische Seitenansicht eines Straßenfertigers,
- Fig. 2
- eine schematische Darstellung eines Fahrersitzes mit einem Bedienelement,
- Fig. 3
- eine schematische Darstellung des Bedienelements,
- Fig. 4
- eine schematische Darstellung eines Moduls des Bedienelements,
- Fig. 5
- eine schematische Darstellung eines Nivelliersystems,
- Fig. 6
- ein Signalblockschaltbild einer elektrischen Steuerung, und
- Fig. 7
- ein Signalblockschaltbild einer elektrischen Steuerung.
- Fig. 1
- a schematic side view of a paver,
- Fig. 2
- a schematic representation of a driver's seat with a control element,
- Fig. 3
- a schematic representation of the operating element,
- Fig. 4
- a schematic representation of a module of the operating element,
- Fig. 5
- a schematic representation of a leveling system,
- Fig. 6
- a signal block diagram of an electrical control, and
- Fig. 7
- a signal block diagram of an electrical control.
Ein in
Der Straßenfertiger 10 ist selbstfahrend ausgebildet. Dazu verfügt er über eine zentrale Antriebseinheit 11, die beispielsweise einen Verbrennungsmotor aufweist, der Hydraulikpumpen zur Versorgung von Hydraulikmotoren und gegebenenfalls einen Generator zur Erzeugung von Energie für elektrische Antriebe antreibt.The
Der Straßenfertiger 10 weist ein Fahrwerk 12 auf, das im gezeigten Ausführungsbeispiel als Radfahrwerk ausgebildet ist, aber auch als Raupenfahrwerk oder ein anderes Fahr- bzw. Laufwerk ausgebildet sein kann. Das in
In Fertigungsrichtung 15 gesehen ist vor der Antriebseinheit 11 ein wannen- bzw. muldenartig ausgebildeter Vorratsbehälter 16 angeordnet. Der Vorratsbehälter 16 nimmt einen Vorrat des zur Herstellung des Straßenbelags dienenden Materials, beispielsweise Asphalt, auf. Gegebenenfalls können auch mehrere Vorratsbehälter vorgesehen sein.Viewed in the
Durch nicht gezeigte Förderorgane wird das Straßenbaumaterial vom Vorratsbehälter 16 unter der Antriebseinheit 11 hindurch zum, in Fertigungsrichtung 15 betrachtet, hinteren Ende des Straßenfertigers 10 transportiert. Von einer hinter dem Fahrwerk 12 angeordneten Verteilerschnecke 17 wird das Straßenbaumaterial über die gesamte Arbeitsbreite des Straßenfertigers 10 verteilt. Dabei gelangt ein Vorrat des Straßenbaumaterials vor eine, hinter der Verteilerschnecke 17 und dem Fahrwerk 12 angehängte, auf- und abbewegbaren hinter Einbaubohle 18.By conveying members, not shown, the road building material from the
Der Straßenfertiger 10 wird von einer nicht dargestellten Bedienperson von einem Bedienstand 19 aus gesteuert. Dieser Bedienstand 19 kann als geschlossene oder offene Kabine ausgebildet sein. Dabei weist der Bedienstand einen Fahrersitz 20 und ein Bedienpult 21 auf.The
Dem Fahrersitz 20 bzw. einer Armlehne 22 des Fahrersitzes 20 kann ein Bedienelement 23 zugeordnet sein (
Die von der Bedienperson vorgenommenen Einstellungen bzw. eingestellten Parameter aber auch die Betriebs- und Maschinenparameter lassen sich in einem Display 24, was ebenfalls dem Fahrersitz 20 zugeordnet ist, darstellen bzw. ablesen. Das Display 24 kann dabei entweder direkt an der Armlehne 22 des Fahrersitzes 20 befestigt sein, oder sich am Bedienpult 21 des Bedienstandes 19 befinden. Die relative Ausrichtung der Armlehne 22 zum Fahrersitz 20 ist nicht auf die in der
Das Bedienelement 23 weist ein fest mit dem Bedienelement 23 verbundenes Eingabefeld 25 auf (
Das Modul 27 kann aus dem Bedienelement 23 entnommen werden (
Vor Beginn der Herstellung des Straßenbelags muss der Straßenfertiger 10 insbesondere die Einbaubohle 18 ausgerichtet bzw. einnivelliert werden. Zum Einnivellieren weist der Straßenfertiger 10 bzw. die Einbaubohle 18 Sensoren 31, 32 auf. Bei diesen Sensoren 31, 32 kann es sich um Abstandssensoren, Neigungssensoren, Einpegelungssensoren oder dergleichen handeln. Diese Sensoren 31, 32 sind an verschiedenen Positionen des Straßenfertigers 10 bzw. der Einbaubohle 18 positioniert. Gesteuert werden diese Sensoren 31, 32 über Bedieneinheiten 33, 34. Diese Bedieneinheiten 33, 34 weisen beispielsweise ein Display 35 und ein Eingabefeld 36 auf. Die Bedieneinheiten kommunizieren mit den Sensoren 31, 32 kabellos. Dabei werden sowohl Daten von den Bedieneinheiten 33, 34 an die Sensoren 31, 32 gesendet wie zum Beispiel Einstellungsparameter; die Sensoren 31, 32 senden aber auch die aufgenommenen Messdaten an die Bedieneinheiten 33, 34 zurück. Die empfangenen Daten werden beispielsweise von den Displays 35 der Bedieneinheiten 33, 34 direkt dargestellt, sodass eine Bedienperson über die Eingabefelder 36 weitere Eingaben wie beispielsweise Korrekturen der Nivellierung vornehmen kann.Before starting the production of the road surface, the
Sowohl die Sensoren 31, 32 als auch die Bedieneinheiten 33, 34 stehen in Verbindung mit einem zentralen Prozessrechner 37 des Straßenfertigers 10. In diesem Prozessrechner 37 laufen alle Signale und Daten der Sensoren 31, 32 und der Bedieneinheiten 33, 34 zusammen. So sind die Sensoren 31, 32 direkt über ein Kabel oder kabellos über Funk mit dem Prozessrechner 37 verbunden (wie in der
Der Prozessrechner 37 ist außerdem verbunden mit dem Bedienelement 23 bzw. mit dem Modul 27, so dass der Prozessrechner 37 des Straßenfertigers 10 alle Maschinen-, Betriebs- und Herstellungsparameter erfasst und abspeichert. Des Weiteren dient der Prozessrechner 37 zur Optimierung des Betriebes des Straßenfertigers 10 und gibt entsprechend Signale an die Steuereinheiten bzw. Motoren aus.The
Bei dem hier dargestellten Straßenfertiger 10 bzw. Radfertiger sind Lenkzylinder 41 der steuerbaren Räder 14 elektrisch ansteuerbar. Diese elektrische Ansteuerung bzw. Steuerung der Lenkzylinder 41 erfolgt auch über den zentralen Prozessrechner 37 des Straßenfertigers 10 (
Zusätzlich zu der eben beschriebenen elektrischen Ansteuerung der Lenkzylinder 41 zur Steuerung der steuerbaren Räder 14 können auch die Antriebsräder 13 derart angesteuert werden, um das Lenkverhalten bzw. ein Lenkradius des Straßenfertigers 10 zu verbessern, insbesondere zu verkleinern (
Bei den Antriebsrädern 13 erfolgt somit die Lenkung nicht über Lenkzylinder 41, sondern vielmehr durch eine Beschleunigung bzw. Abbremsen der Radmotoren 48, 49, wie es beispielsweise von Kettenfahrzeugen bekannt ist. Durch diese Kombination der elektrischen Ansteuerung der Lenkzylinder 41 und der Radmotoren 48, 49 kann das Lenkverhalten des Straßenfertigers 10 verbessert werden.In the case of the
Es kann des Weiteren vorgesehen sein, dass die Lenkung des Straßenfertigers 10 ausschließlich durch eine elektrische Ansteuerung der Radmotoren 48 und 49 erfolgt, sodass durch eine gegensinnige Beschleunigung bzw. Abbremsen der Antriebsräder 13 der Straßenfertiger 10 gesteuert wird. Dabei wird der gesamte Bewegungsablauf bzw. Steuerungsablauf des Straßenfertigers 10 ständig von dem Prozessrechner 37 überwacht und gegebenenfalls optimiert und entsprechende Parameter an die Bedienelemente 23 bzw. die Bedieneinheiten 34 übertragen. Durch die gleichen Bedienelemente 23 bzw. das Modul 27 und/oder die Bedieneinheit 34 kann der Steuervorgang des Straßenfertigers 10 ständig kontrolliert oder gesteuert werden.
Claims (6)
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DE102014109272.4A DE102014109272A1 (en) | 2014-07-02 | 2014-07-02 | pavers |
EP15001830.7A EP2963181B1 (en) | 2014-07-02 | 2015-06-20 | Paver |
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EP15001830.7A Division-Into EP2963181B1 (en) | 2014-07-02 | 2015-06-20 | Paver |
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US10961669B2 (en) | 2018-01-12 | 2021-03-30 | Terex Usa, Llc | System and method for changing a surface characteristic of a concrete bridge surface |
EP3594407A1 (en) * | 2018-07-09 | 2020-01-15 | Dynapac GmbH | Road construction machine and method for operating a road construction machine |
DE102018005534A1 (en) | 2018-07-09 | 2020-01-09 | Dynapac Gmbh | Road construction machine and method for operating a road construction machine |
WO2022100838A1 (en) | 2020-11-12 | 2022-05-19 | Moba Mobile Automation Ag | Control system for a construction machine |
CN115866552A (en) * | 2022-11-04 | 2023-03-28 | 徐工集团工程机械股份有限公司道路机械分公司 | Wireless group communication device and method for paver |
Citations (3)
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DE29508396U1 (en) * | 1995-05-19 | 1995-08-10 | Joseph Vögele AG, 68163 Mannheim | Paver |
DE29612035U1 (en) * | 1996-07-10 | 1996-09-12 | Joseph Vögele AG, 68163 Mannheim | Paver |
EP1627774A1 (en) * | 2004-07-27 | 2006-02-22 | Joseph Voegele AG | Construction machine with control desk |
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DE1213464B (en) * | 1959-09-04 | 1966-03-31 | Barber Greene Co | Trackless paver |
DE4134840C2 (en) * | 1991-10-22 | 1995-07-06 | Joseph Voegele Ag | Pavers |
DE19511909C2 (en) * | 1995-03-31 | 2002-12-12 | Metso Dynapac Gmbh | Method for driving two wheels of a road construction machine mounted on a tandem axle |
DE19605926C1 (en) * | 1996-02-17 | 1997-05-07 | Abg Allg Baumaschinen Gmbh | Road-laying machine with task-specific control loops and processors |
DE19858124C2 (en) * | 1998-12-16 | 2003-06-18 | Naf Neunkirchener Achsenfabrik | Wheel Drive |
-
2014
- 2014-07-02 DE DE102014109272.4A patent/DE102014109272A1/en not_active Withdrawn
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2015
- 2015-06-20 EP EP15001830.7A patent/EP2963181B1/en active Active
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DE29508396U1 (en) * | 1995-05-19 | 1995-08-10 | Joseph Vögele AG, 68163 Mannheim | Paver |
DE29612035U1 (en) * | 1996-07-10 | 1996-09-12 | Joseph Vögele AG, 68163 Mannheim | Paver |
EP1627774A1 (en) * | 2004-07-27 | 2006-02-22 | Joseph Voegele AG | Construction machine with control desk |
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DE102014109272A1 (en) | 2016-01-07 |
EP3252233B1 (en) | 2024-05-01 |
EP2963181B1 (en) | 2017-08-16 |
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